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Effects of Linker Length and Flexibility on Multivalent Targeting

机译:接头长度和柔性对多价靶向的影响

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Increasing valence can enhance the ability of molecular targeting constructs to bind specifically to targeted cells for drug delivery. Here, we mathematically model the length and flexibility of a linker used to conjoin two peptide ligands of a divalent targeting construct and investigate the influence both on binding avidity and specificity. Four different models are used to approximate varying degrees of linker flexibility (random coil, rigid rod, jointed rods, and combined rod-random coil) and for each linker a binding enhancement factor (V_R) is derived that quantifies the increased rate of each construct's second binding event over the first. Results indicate that the moderately flexible models can best reproduce experimentally measured avidities. Also, the magnitude of V_R, in conjunction with receptor density and ligand concentration, significantly influences the achievable specificity. Thus, the model elucidates important considerations in designing multivalent targeting constructs for use in delivery of targeted therapy or imaging.
机译:化合价的增加可以增强分子靶向构建体与靶细胞特异性结合以进行药物递送的能力。在这里,我们在数学上模拟用于连接二价靶向构建体的两个肽配体的接头的长度和柔性,并研究对结合亲和力和特异性的影响。使用四种不同的模型来估算接头柔性的变化程度(随机线圈,刚性杆,节理杆和组合杆-随机线圈),并且对于每个接头,得出结合增强因子(V_R),该因子量化每个构建体的增加速率第二个绑定事件超过第一个。结果表明,适度灵活的模型可以最好地重现实验测量的亲和力。此外,V_R的大小与受体密度和配体浓度一起会显着影响可达到的特异性。因此,该模型阐明了在设计用于递送靶向治疗或成像的多价靶向构建体中的重要考虑因素。

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